首页> 外文期刊>Analytical chemistry >Quantification of Iron in Seawater at the Low Picomolar Range Based on Optimization of Bromate/Ammonia/Dihydroxynaphtalene System by Catalytic Adsorptive Cathodic Stripping Voltammetry
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Quantification of Iron in Seawater at the Low Picomolar Range Based on Optimization of Bromate/Ammonia/Dihydroxynaphtalene System by Catalytic Adsorptive Cathodic Stripping Voltammetry

机译:催化吸附吸附溶出伏安法优化溴酸盐/氨水/二羟基萘体系下低皮摩尔范围内海水中铁的定量

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摘要

A new analytical protocol for the challenging analysis of total dissolved iron at the low picomolar level in oceanic waters suitable for onboard analysis is presented. The method is based on the revision of the adsorptive properties of the iron/2,3-dihydroxynaphthalene (Fe/DHN) complexes on the hanging mercury drop electrode with catalytic enhancement by bromate ions. Although it was based on a previously proposed reagent combination, we show here that the addition of an acidification/alkalinization step is essential in order to cancel any organic complexation, and that an extra increment of the pH to 8.6-8.8 leads to the definition of a preconcentration-free procedure with the lowest detection limit described up to now. For total dissolved iron analysis, samples were acidified to pH 2.0 in the presence of 30 μM DHN and left to equilibrate overnight. A 10 mL sample was subsequently buffered to a pH of ~8.7 in the presence of 20 mM bromate: a 60 s deposition at 0 V led to a sensitivity of 34 nA nM~(-1) min~(-1), a 4-fold improvement over previous methods, that translated in a limit of detection of 5 pM (2-20 fold improvement). Several tests proved that a nonreversible reaction in the time scale of the analysis, triggered by the acidification/alkalinization step, was behind the signal magnification. The new method was validated onboard via the analysis of reference material and via intercalibration against flow injection analysis-chemiluminescence on Southern Ocean surface samples.
机译:提出了一种新的分析方案,适用于船上分析,用于挑战性地分析海洋水中低皮摩尔含量的总溶解铁。该方法是基于对溴/ 2离子对铁/ 2,3-二羟基萘(Fe / DHN)络合物在悬挂式汞滴电极上的吸附性能的修正。尽管它是基于先前提出的试剂组合,但是我们在这里表明添加酸化/碱化步骤对于取消任何有机络合是必不可少的,pH值额外增加到8.6-8.8导致了对迄今为止描述的最低检测限的无预浓缩程序。为了进行总溶解铁分析,将样品在30μMDHN存在下酸化至pH 2.0,并使其平衡过夜。随后在20 mM溴酸盐存在下将10 mL样品缓冲至pH值为8.7左右:在0 V下60 s沉积导致灵敏度为34 nA nM〜(-1)min〜(-1),灵敏度为4比以前的方法提高了两倍,检测限为5 pM(提高了2到20倍)。几项测试证明,在分析时间范围内,由酸化/碱化步骤触发的不可逆反应是信号放大的原因。通过对参考物质的分析以及针对南洋表面样品的流动注射分析-化学发光的相互校准,新方法在船上得到了验证。

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